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Field
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' prognosis or treatment decisions. For modeling, we use both public and proprietary clinical and research data greatly enriched by our own repository of digital pathology images. A further focus lies on
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circuit modeling, in vivo two-photon microscopy of synaptic and cellular activity, two-photon optogenetic perturbations, CRISPR/Cas9 gene manipulations, and rodent visual behaviors. In
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will facilitate the comprehensive characterization of microelectronics under various conditions, including thermal, mechanical, and radiation stresses. The software developed through this project will
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diverse academic backgrounds to contribute to our projects in areas such as: Network Security, Information Assurance, Model-driven Security, Cloud Computing, Cryptography, Satellite Systems, Vehicular
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recognized institute. You will join an open, collaborative team that values teamwork, professional diligence, and innovation. The Software Engineering section provides flexible work conditions and strong
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Duties: Develop/apply models that help better understand and manage for weather/climate related risks for agriculture (with an emphasis on specialty crops) and water resources management. Assimilate
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projects that use the Self-Determined Learning Model of Instruction (SDLMI), the Self-Determined Career Design Model (SDCDM), the Self-Determination Inventory and other interventions and assessments designed
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Your Job: Synthesis and physicochemical characterization of energy materials or representative model systems Characterization of the dynamical and structural properties of energy materials with a
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, characterization, and modeling of metamaterial fibers and textiles. Develop and optimize fabrication processes for fibers and textiles. Conduct optical characterization of the developed materials and analyze
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salary at the designated experience level minimum, are offered when necessary to meet competitive conditions. Full UCSB postdoc benefits package included. Percent time: 100 Anticipated start: July 1, 2025